Phase transition process occurs rapidly and at unpredictable time, posing challenges for traditional cameras to capture the entire process at high speed. Here, we present a self-supervised learning enhanced high-speed...
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diffractive waveguide displays have low optical efficiency from multiple in-coupler interactions. Single-zone designs trade efficiency for image quality, but we demonstrate how a multi-zone in-coupler mitigates this t...
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We present the design and simulation of a loop terminated Mach-Zehnder plasmonic modulator, implemented on a silicon nitride-loaded thin film lithium niobate on insulator platform. This device features a low peak-to-p...
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Fluorescence imaging flow cytometry (IFC) has enriched both structural and functional information for diverse applications. We developed portable light-sheet optofluidic microscopy equipping simultaneous multicolor ac...
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ImPASS can produce image resolution that subceeds the optical diffraction limit by a factor of 1.5 with broadband and 2.6 for narrowband illumination. Here we study the influence of bandwidth on final image resolution...
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The application of digital holographic microscopy (dHM) in biomedical laboratories requires a fast and robust imageacquisition. In overview, different quantitative dHM phase contrast approaches towards high-throughpu...
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We propose an iterative phase estimation from two diffraction images recorded by space division multiplexing. Two intensity images can be captured by polarization camera after separating object intensity of two planes...
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3-d imaging techniques suffer from noise anddeterioration of image quality. This work explores an unsuperviseddeep learning method for integral imaging denoising using a single shot that overcomes the problem of lim...
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We address the background color effect in integral imaging. The investigation is performed on 3d scenes consisting dice of red, green, blue and white colors. The reconstructedimages are compared via measurement of th...
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